Role of tetanus neurotoxin insensitive vesicle-associated membrane protein in membrane domains transport and homeostasis.

Cellular logistics Pub Date : 2015-04-29 eCollection Date: 2015-01-01 DOI:10.1080/21592799.2015.1025182
Diana Molino, Sébastien Nola, Sin Man Lam, Agathe Verraes, Véronique Proux-Gillardeaux, Gaëlle Boncompain, Franck Perez, Markus Wenk, Guanghou Shui, Lydia Danglot, Thierry Galli
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引用次数: 15

Abstract

Biological membranes in eukaryotes contain a large variety of proteins and lipids often distributed in domains in plasma membrane and endomembranes. Molecular mechanisms responsible for the transport and the organization of these membrane domains along the secretory pathway still remain elusive. Here we show that vesicular SNARE TI-VAMP/VAMP7 plays a major role in membrane domains composition and transport. We found that the transport of exogenous and endogenous GPI-anchored proteins was altered in fibroblasts isolated from VAMP7-knockout mice. Furthermore, disassembly and reformation of the Golgi apparatus induced by Brefeldin A treatment and washout were impaired in VAMP7-depleted cells, suggesting that loss of VAMP7 expression alters biochemical properties and dynamics of the Golgi apparatus. In addition, lipid profiles from these knockout cells indicated a defect in glycosphingolipids homeostasis. We conclude that VAMP7 is required for effective transport of GPI-anchored proteins to cell surface and that VAMP7-dependent transport contributes to both sphingolipids and Golgi homeostasis.

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破伤风神经毒素不敏感囊泡相关膜蛋白在膜结构域运输和体内平衡中的作用。
真核生物的生物膜中含有大量的蛋白质和脂质,通常分布在质膜和膜的结构域中。负责这些膜结构域沿分泌途径运输和组织的分子机制仍然是难以捉摸的。本研究表明,囊泡SNARE TI-VAMP/VAMP7在膜结构域的组成和运输中起主要作用。我们发现,从vamp7敲除小鼠分离的成纤维细胞中,外源性和内源性gpi锚定蛋白的转运发生了改变。此外,在VAMP7缺失的细胞中,Brefeldin A处理导致高尔基体的分解和重组受损,表明VAMP7表达缺失改变了高尔基体的生化特性和动力学。此外,这些敲除细胞的脂质谱表明鞘糖脂稳态存在缺陷。我们得出结论,VAMP7是gpi锚定蛋白有效运输到细胞表面所必需的,并且VAMP7依赖的运输有助于鞘脂和高尔基体内平衡。
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